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Minimum Energy Tracking Loop With Embedded DC–DC Converter Enabling Ultra-Low-Voltage Operation Down to 250 mV in 65 nm CMOS

机译:具有嵌入式DC-DC转换器的最小能量跟踪环路,可在65 nm CMOS中实现低至250mV的超低压工作

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摘要

Minimizing the energy consumption of battery-powered systems is a key focus in integrated circuit design. This paper presents an energy minimization loop, with on-chip energy sensor circuitry, that can dynamically track the minimum energy operating voltage of arbitrary digital circuits with changing workload and operating conditions. An embedded DC-DC converter which enables this minimum energy operation is designed to deliver load voltages between 0.25 V to 0.7 V. The minimum energy tracking loop along with the DC-DC converter and test circuitry were fabricated in a 65 nm CMOS process. The area overhead of the control loop is only 0.05 mm2. Measured energy savings of the order of 50%-100% are obtained on tracking the minimum energy point (MEP) as it varies with workload and temperature. The DC-DC converter delivers load voltages as low as 250 mV and achieved an efficiency >80% while delivering load powers of the order of 1 muW and higher from a 1.2 V supply.
机译:使电池供电系统的能耗最小化是集成电路设计的重点。本文提出了一种带有片上能量传感器电路的能量最小化环路,该环路可以随着工作量和工作条件的变化动态跟踪任意数字电路的最小能量工作电压。嵌入式DC-DC转换器可实现这种最低的能量工作,旨在提供0.25 V至0.7 V的负载电压。最小的能量跟踪环路以及DC-DC转换器和测试电路均采用65 nm CMOS工艺制造。控制回路的面积开销仅为0.05 mm2。跟踪最小能量点(MEP)随其工作量和温度的变化,可测得的节能量约为50%-100%。 DC-DC转换器可提供低至250 mV的负载电压,并实现了大于80%的效率,同时可通过1.2 V电源提供1μW甚至更高的负载功率。

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